Part Number Hot Search : 
74HC5 FDS6875 XFATM 74HC405 FM24CL TZB47B 1460B SUPR16
Product Description
Full Text Search
 

To Download CF5760AA Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 CF5760 series
NIPPON PRECISION CIRCUITS INC.
CMOS Analog Clock IC
OVERVIEW
The CF5760 series devices are analog clock ICs that derive their timing from a 32.768 kHz oscillator element. They feature a reset function (optional seconds control function) which can be used to maintain accurate time. Various alarm functions and motor outputs are available to match a wide range of clock specifications.
FEATURES
I I I I I I I I
PAD LAYOUT
Top view
1.2 to 2.0V operating supply voltage 1.2A (typ) / 1.5V current consumption 32.768 kHz oscillator circuit Oscillator capacitance CG and CD built-in Alarm output function Reset function (optional seconds control function) Input chattering elimination function (AI/R) Chip form (CF5760xx)
VDD AI/R O1
1 2
9 8
XT XTN AON AO VSS
3 7 6
O2 (0,0)
4
HA5760
5
Chip size: 0.76 x 1.21 mm Chip thickness: 300 30 m P ad size: 100 x 100 m R e verse side: V D D level
SERIES CONFIGURATION
CF5760AA
Built-in capacitance 1 C (pF) D C G (pF) 3 25 H I G H / L OW LOW 1 23.4 AO HIGH 4 8 900 900 AO N LOW 4 8 900 900 AO HIGH DC - 900 10
C F 5 7 6 0 BA
3 25 H I G H / L OW LOW 1 23.4 AO N F
(32kHz)
CF5760CC
3 33 LOW/HIGH HIGH 1 31.25 AO HIGH 2 8+1 900 900 AO N LOW 2 8+1 900 900
C F 5 7 6 0 DA
3 25 LOW/HIGH LOW 1 27.3 AO HIGH DC - 900 10 AO N F
(32kHz)
CF5760EA
3 25 -/LOW - 1 1000 AO - - - - - AO N - - - - -
CF5760FC
3 33 LOW/HIGH - 0.0625 62.5 AO HIGH 2 8+1 900 900 AO N LOW 2 8+1 900 900
CF5760HA
3 25 LOW/HIGH HIGH 1 46.875 AO HIGH 2 8+1 900 900 AO N LOW 2 8+1 900 900
C F 5 7 6 0 JA
3 25 LOW/HIGH - 0.0625 62.5 AO HIGH DC - 900 10 AO N F
(32kHz)
Alarm input/reset input level Active level Motor output Needle period tC Y (s) Pulsewidth tP W (ms) Pins Active level Frequency fP W (kHz) Modulation fC Y (Hz) IO H min ( A) IO L min ( A)
- - 10 10
- - 10 10
- - 10 10
Alarm output
1. Built-in capacitance includes the parasitic capacitance.
ORDERING INFORMATION
D e vice C F 5 7 6 0 xx P ackag e Chip form
NIPPON PRECISION CIRCUITS--1
CF5760 series
BLOCK DIAGRAM
VSS
VDD
CG
XT
CD
7 Stage Divider
9 Stage Divider
XTN AI/R Reset Input
Alarm Input
Alarm Output Control
Motor Output Control
AO
AON
O1
O2
PAD DESCRIPTION/DIMENSIONS
Dimensions (m) No. 1 2 3 4 5 6 7 8 9 Name VDD AI/R O1 O2 VSS AO AO N XTN XT Supply Alarm input and reset input Motor output 1 Motor output 2 Ground Alarm output 1 Alarm output 2 Oscillator output Oscillator input Description X 155 155 155 145 615 615 615 615 615 Y 1065 854 620 145 145 325 505 746 1065
NIPPON PRECISION CIRCUITS--2
CF5760 series
SPECIFICATIONS
Absolute Maximum Ratings
P arameter Supply voltage range Input voltage range Operating temperature range Storage temperature range Symbol VDD - VSS V IN T opr T stg Condition Rating -0.3 to 5.0 V S S V IN V D D -30 to 80 -65 to 150 Unit V V C C
Electrical Characteristics
Ta = 25C, VDD = 1.5V, VSS = 0V, CG = 23pF, CD = 25pF, X'tal (f0 = 32.768kHz, CI = 50k max) unless otherwise noted
Rating P arameter Operating voltage Current consumption Oscillator start-up time Motor output current AI/R HIGH-level input current AI/R LOW -level input current Oscillator frequency stability Alarm L OW -level output current 2 (AO , AO N ) Alarm HIGH-level output current 2 (AO , AO N ) F output voltage 3 Internal capacitance 4 Symbol VDD ID D tS TA IM O T IIH IIL f/f IO L 1 IO L 2 IO H 1 IO H 2 VF CG CD O1 = O2 = open V D D = 1.2V V D D = 1.2V, R L = 200 1 V D D = 1.5V V D D = 1.5V V D D = 1.2 to 2.0V V D D = 1.5V, V O L = 0.75V V D D = 1.5V, V O L = 0.75V V D D = 1.5V, V O H = 0.75V V D D = 1.5V, V O H = 0.75V V D D = 1.2V, C L = 50pF Condition min 1.2 - - 4.0 2 2 - 900 10 900 10 0.4 typ - 1.2 - - 4 4 0.5 2000 30 2000 30 - max 2.0 4.0 5.0 - 8 8 1.0 - - - - - V A s mA A A ppm/0.1V A A A A V pF Refer to the SERIES LINEUP pF Unit
1. R L is the load resistance connected between O1 and O2. 2. CF5760AA/ CC/ FC/ HA: If the outputs (AO or AON) are shor t circuit, the output current is I A O 900 A. 3. The F output voltage rating, V F, when a load capacitance, C L , is connected between pin F and V S S , is the difference voltage between the center voltage, 0.5V D D , and the peak voltage. 4. C G is the capacitance between V D D a n d X T. C D is the capacitance between VDD and XTN.
NIPPON PRECISION CIRCUITS--3
CF5760 series
FUNCTIONAL DESCRIPTION
Motor Output
Motor output waveform (step motor driver)
tPW
O1 (Active High)
tPW
O2 (Active High)
tCY
tCY tCY : Needle period tPW : Pulse width
Motor output waveform (sweep motor driver)
tPW
62.5ms O1
tCY
62.5ms O2
tCY
62.5ms
tPW
62.5ms
tCY : Needle period tPW : Pulse width
Input Chattering Elimination Function (AI/R)
A bounce delay is provided on the AI/R input to eliminate erroneous operation caused by input bounce (chattering).
tON
AI/R (Active Low)
tO N < 62.5ms: input is ignored. 62.5 tO N 125ms: indeterminate tO N > 125ms: input is accepted.
Input Control Functions
When AI/R is open circuit, a 256Hz signal is output. When AI/R is HIGH or LOW, it selects the alarm (HIGH)/reset (LOW) function or reset (HIGH)/alarm (LOW) function depending on the version.
NIPPON PRECISION CIRCUITS--4
CF5760 series
Reset Function (optional seconds control function)
When AI/R goes active level for a reset, the motor output stops. When the reset is released, the first motor output pulse occurs on the output pin opposite to that which had the last output pulse immediately before the reset.
AI/R (Active Low)
tPW
tON
O1 (Active High)
tPW
O2 (Active High)
tCY
tCY
tCY -125msec
+0
Alarm Output
Alarm output waveform
tON
AI/R (Active High)
AO (Active High) fCY (Hz) *1 AON (Active Low) fPW(Hz)
*1: Opposite phase to AO . fP W = alarm fundamental frequency fC Y = alarm modulation frequency
F Output Function
The AON pin may be replaced by the F pin which is used to output a 32kHz signal (unaffected by the reset function).
NIPPON PRECISION CIRCUITS--5
CF5760 series
TYPICAL APPLICATION CIRCUITS
Alarm (HIGH)/Reset (LOW), Piezoelectric alarm
VDD CG XT X'tal 3k Alarm Switch AI/R AON Reset Switch VSS O1
M
XTN O2
AO Piezo Speaker
Reset (HIGH)/Alarm (LOW), DC Output, F Output
VDD CG XT X'tal Reset Switch AI/R F 3k Alarm Switch VSS O1
M M
Motor Bell
XTN
O2
AO
NIPPON PRECISION CIRCUITS--6
CF5760 series
NIPPON PRECISION CIRCUITS INC. reserves the right to make changes to the products described in this data sheet in order to improve the design or performance and to supply the best possible products. Nippon Precision Circuits Inc. assumes no responsibility for the use of any circuits shown in this data sheet, conveys no license under any patent or other rights, and makes no claim that the circuits are free from patent infringement. Applications for any devices shown in this data sheet are for illustration only and Nippon Precision Circuits Inc. makes no claim or warranty that such applications will be suitable for the use specified without further testing or modification. The products described in this data sheet are not intended to use for the apparatus which influence human lives due to the failure or malfunction of the products. Customers are requested to comply with applicable laws and regulations in effect now and hereinafter, including compliance with expor t controls on the distribution or dissemination of the products. Customers shall not expor t, directly or indirectly, any products without first obtaining required licenses and approvals from appropriate government agencies. NIPPON PRECISION CIRCUITS INC. 4-3, Fukuzumi 2-chome Koto-ku, Tokyo 135-8430, Japan Telephone: 03-3642-6661 Facsimile: 03-3642-6698
NC9812BE 2000.09
NIPPON PRECISION CIRCUITS INC.
NIPPON PRECISION CIRCUITS--7


▲Up To Search▲   

 
Price & Availability of CF5760AA

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X